Loss of stearoyl-CoA desaturase-1 improves insulin sensitivity in lean mice but worsens diabetes in leptin-deficient obese mice

被引:119
作者
Flowers, Jessica B.
Rabaglia, Mary E.
Schueler, Kathryn L.
Flowers, Matthew T.
Lan, Hong
Keller, Mark P.
Ntambi, James M.
Attie, Alan D.
机构
[1] Univ Wisconsin, Dept Biochem, Madison, WI 53706 USA
[2] Univ Wisconsin, Dept Nutr Sci, Madison, WI 53706 USA
关键词
D O I
10.2337/db06-1142
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The lipogenic gene stearoyl-CoA desaturase (SCD)1 appears to be a promising new target for obesity-related diabetes, as mice deficient in this enzyme are resistant to diet- and leptin deficiency-induced obesity. The BTBR mouse strain replicates many features of insulin resistance found in humans with excess visceral adiposity. Using the hyperinsulinemic-euglycemic clamp technique, we determined that insulin sensitivity was improved in heart, soleus muscle, adipose tissue, and liver of BTBR SCD1-deficient mice. We next determined whether SCD1 deficiency could prevent diabetes in leptin-deficient BTBR mice. Loss of SCD1 in leptin(ob/ob) mice unexpectedly accelerated the progression to severe diabetes; 6-week fasting glucose increased similar to 70%. In response to a glucose challenge, Scd1(-/-) leptin(ob/ob) mice had insufficient insulin secretion, resulting in glucose intolerance. A morphologically distinct class of islets isolated from the Scd1(-/-) leptin(ob/ob) mice had reduced insulin content and increased triglycerides, free fatty acids, esterified cholesterol, and free cholesterol and also a much higher content of saturated fatty acids. We believe the accumulation of lipid is due to an upregulation of lipoprotein lipase (20-fold) and Cd36 (167-fold) and downregulation of lipid oxidation genes in this class of islets. Therefore, although loss of Scd1 has beneficial effects on adiposity, this benefit may come at the expense of beta-cells, resulting in an increased risk of diabetes.
引用
收藏
页码:1228 / 1239
页数:12
相关论文
共 58 条
[51]   Fatty acid-induced β cell apoptosis:: A link between obesity and diabetes [J].
Shimabukuro, M ;
Zhou, YT ;
Levi, M ;
Unger, RH .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (05) :2498-2502
[52]   The FFA receptor GPR40 links hyperinsulinemia, hepatic steatosis, and impaired glucose homeostasis in mouse [J].
Steneberg, R ;
Rubins, N ;
Bartoov-Shifman, R ;
Walker, MD ;
Edlund, H .
CELL METABOLISM, 2005, 1 (04) :245-258
[53]   Genetic obesity unmasks nonlinear interactions between murine type 2 diabetes susceptibility loci [J].
Stoehr, JP ;
Nadler, ST ;
Schueler, KL ;
Rabaglia, ME ;
Yandell, BS ;
Metz, SA ;
Attie, AD .
DIABETES, 2000, 49 (11) :1946-1954
[54]   Lipotoxicity of β-cells in obesity and in other causes of fatty acid spillover [J].
Unger, RH ;
Zhou, YT .
DIABETES, 2001, 50 :S118-S121
[55]   PUTATIVE MEMBRANE FATTY-ACID TRANSLOCASE AND CYTOPLASMIC FATTY-ACID-BINDING PROTEIN ARE COEXPRESSED IN RAT-HEART AND SKELETAL-MUSCLES [J].
VANNIEUWENHOVEN, FA ;
VERSTIJNEN, CPHJ ;
ABUMRAD, NA ;
WILLEMSEN, PHM ;
VANEYS, GJJM ;
VANDERVUSSE, GJ ;
GLATZ, JFC .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1995, 207 (02) :747-752
[56]   Gene expression profiling in skeletal muscle of Zucker diabetic fatty rats: implications for a role of stearoyl-CoA desaturase 1 in insulin resistance [J].
Voss, MD ;
Beha, A ;
Tennagels, N ;
Tschank, G ;
Herling, AW ;
Quint, M ;
Gerl, M ;
Metz-Weidmann, C ;
Haun, G ;
Korn, M .
DIABETOLOGIA, 2005, 48 (12) :2622-2630
[57]   Fatty acid metabolism and insulin secretion in pancreatic beta cells [J].
Yaney, GC ;
Corkey, BE .
DIABETOLOGIA, 2003, 46 (10) :1297-1312
[58]  
Zraika S, 2002, Obes Rev, V3, P103, DOI 10.1046/j.1467-789X.2002.00062.x